Optimization of the content of isobutane in the feed stream of the plant for sulfuric acid alkylation of isobutane with olefins

A. A. Zhadyaev, S. V. Popov, O. V. Khabibrakhmanova, D. E. Balabashkina
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Abstract

The raw materials for the industrial production of moto- and air-alkylates are isobutane and butane-butylene fractions containing in their composition a component, n-butane, which is inert for the reaction of sulfuric acid alkylation of isobutane with olefins. In accordance with the Specifications TU 0272-024-00151638-99, the content of n-butane in the isobutane fraction, depending on the grade of the fraction, is 0.7÷20% wt. Its presence reduces the useful reaction volume of the alkylation reactor, and when separating the components of the alkylation reaction mass, it is necessary to use a distillation column (debutanizer). The possibility of including an additional column in the technological scheme for removing n-butane from the composition of the fraction (respectively, isobutane concentration) before it is fed into the alkylation reactor is being considered. This is of particular importance for factions with a brand below "High Brand". The study is conducted using the Honeywell UniSim Design software system. The Peng-Robinson method was used to calculate the properties of process stream components. The theoretically optimal design of the apparatus was calculated: when using a distillation column with a pressure in the apparatus of about 400 kPa to reduce the content of n-propane in the distillate (obtained isobutane fraction) to 0.001 mol. the share will require 48 theoretical plates, the accepted reflux ratio R = 8.9, the temperatures in the condenser and reboiler are 26.88 and 47.27 °C, respectively. A computational experiment has shown that in order to achieve the practical absence of n-butane in the obtained isobutane fraction (concentration of about 0.1% wt.), it is possible to use a distillation column with the following technological modes: the number of plates is 60, the feed plate is 15, the efficiency of contact devices is 0.8; the pressure in the column is about 400 kPa, the temperature in the condenser and reboiler is Тk=28.91÷29.05 ℃ and Тр=46.72÷47.25 ℃, respectively, reflux ratio R=20.41. This fraction also does not contain pentanes.
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异丁烷与烯烃硫酸烷基化装置进料流中异丁烷含量的优化
工业生产气态烷基酸和空气烷基酸的原料是异丁烷和丁烷-丁烯馏分,其组成中含有一种组分正丁烷,正丁烷在异丁烷与烯烃的硫酸烷基化反应中是惰性的。根据规范TU 0272-024-00151638-99,异丁烷馏分中正丁烷的含量,根据馏分等级的不同,为0.7÷20% wt。它的存在减少了烷基化反应器的有用反应体积,在分离烷基化反应质量组分时,需要使用精馏塔(脱烷器)。正在考虑在馏分(分别为异丁烷浓度)进入烷基化反应器之前从其组成中除去正丁烷的技术方案中包括一个附加柱的可能性。这对于品牌低于“高品牌”的派系尤其重要。本研究使用霍尼韦尔UniSim Design软件系统进行。采用Peng-Robinson方法计算工艺流组件的性质。计算了装置的理论优化设计:当装置中使用压力约为400 kPa的精馏塔将馏出物(所得异丁烷馏分)中的正丙烷含量降低至0.001 mol时,该部分需要48块理论极板,可接受的回流比R = 8.9,冷凝器和再沸器温度分别为26.88℃和47.27℃。计算实验表明,为使所得异丁烷馏分(浓度约为0.1% wt.)实际不含正丁烷,可采用以下工艺模式的精馏塔:板数为60,进料板为15,接触装置效率为0.8;塔内压力约400kpa,冷凝器和再沸器温度分别为Тk=28.91÷29.05℃和Тр=46.72÷47.25℃,回流比R=20.41。这个馏分也不含戊烷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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